A dispensing device for dispensing fluid from a side-by-side fluid cartridge includes a dispenser body, a first piston adapted to slide within a first fluid chamber of the fluid cartridge, a second piston adapted to slide within a second fluid chamber of the fluid cartridge, and an adapter head moveable between first and second positions for releasably connecting the fluid cartridge to the dispenser body. The first piston and the second piston are coaxially aligned with the first fluid chamber and the second fluid chamber, respectively, when the adapter head is in the first position and also when the adapter head is in the second position. Another dispensing device includes a plate coupled with a dispenser body and movable in an axial direction of a fluid cartridge between a first position for receiving a first cartridge flange having a first flange thickness and a second position for receiving a second cartridge flange having a second flange thickness.
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9. A dispensing device for dispensing fluid from a side-by-side fluid cartridge having a first fluid chamber, a second fluid chamber, and a cartridge flange having a flange thickness in an axial direction of the side-by-side fluid cartridge, the dispensing device comprising:
a dispenser body, the side-by-side fluid cartridge being releasably connectable thereto with the cartridge flange;
a plate coupled with the dispenser body and movable in the axial direction of the side-by-side fluid cartridge between a first position for receiving a first cartridge flange having a first flange thickness and a second position for receiving a second cartridge flange having a second flange thickness.
15. A method of releasably connecting a side-by-side fluid cartridge to a fluid dispensing device having a dispenser body and a plate coupled therewith, the plate being movable in an axial direction of the side-by-side fluid cartridge, the side-by-side fluid cartridge including a cartridge flange having a flange thickness in the axial direction of the side-by-side fluid cartridge, the method comprising:
placing the plate in a first position in which the dispenser body is configured to receive a first cartridge flange having a first flange thickness;
connecting the first cartridge flange to the dispenser body with the plate in the first position;
removing the first cartridge flange from the dispenser body; and
moving the plate toward a second position in which the dispenser body is configured to receive a second cartridge flange having a second flange thickness different than the first flange thickness.
1. A dispensing device for dispensing fluid from a side-by-side fluid cartridge having a first fluid chamber and a second fluid chamber, the dispensing device comprising:
a dispenser body;
a first piston coupled with the dispenser body and configured to slide within the first fluid chamber;
a second piston coupled with the dispenser body and configured to slide within the second fluid chamber;
an adapter head configured to releasably connect the side-by-side fluid cartridge to the dispenser body, the adapter head being rotatable about a central axis of the dispenser body between a first position in which the side-by-side fluid cartridge is releasable from the dispenser body and a second position in which the side-by-side fluid cartridge is in locking engagement with the dispenser body; and
an adapter ring configured to be removably coupled with the side-by-side fluid cartridge and to contact the adapter head to retain the side-by-side fluid cartridge in locking engagement with the dispenser body when the adapter head is in the second position, the adapter ring being removable from contact with the adapter head when the adapter head is in the first position,
wherein the first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber when the adapter head is in the first position, and
wherein the first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber when the adapter head is in the second position.
13. A method of releasably connecting a side-by-side fluid cartridge to a fluid dispensing device, the side-by-side fluid cartridge having a first fluid chamber and a second fluid chamber, and the fluid dispensing device having a dispenser body, a first piston coupled with the dispenser body and configured to slide within the first fluid chamber, a second piston coupled with the dispenser body and configured to slide within the second fluid chamber, and an adapter head coupled with the dispenser body, and an adapter ring configured to be removably coupled with the side-by-side fluid cartridge, the method comprising:
placing the adapter head in a first position in which the adapter head is configured to receive a portion of the side-by-side fluid cartridge;
positioning the side-by-side fluid cartridge adjacent to the dispenser body while the adapter head is in the first position such that the first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber;
positioning the adapter ring to contact the adapter head while the adapter head is in the first position, the adapter head being removable from contact with the adapter head when the adapter head is in the first position; and
rotating the adapter head about a central axis of the dispenser body into a second position to engage the adapter ring and lock the side-by-side fluid cartridge with the dispenser body while the first piston remains coaxially aligned with the first fluid chamber and the second piston remains coaxially aligned with the second fluid chamber.
2. The dispensing device of
3. The dispensing device of
4. The dispensing device of
5. The dispensing device of
6. The dispensing device of
7. The dispensing device of
a plate coupled with the dispenser body and movable in the axial direction of the side-by-side fluid cartridge between a first position for receiving a first cartridge flange having a first flange thickness and a second position for receiving a second cartridge flange having a second flange thickness.
8. The dispensing device of
10. The dispensing device of
11. The dispensing device of
an adapter head configured to releasably connect the side-by-side fluid cartridge to the dispenser body, the adapter head being movable between a first position in which the side-by-side fluid cartridge is releasable from the dispenser body and a second position in which the side-by-side fluid cartridge is in locking engagement with the dispenser body.
12. The dispensing device of
a first piston coupled with the dispenser body and adapted to slide within the first fluid chamber; and
a second piston coupled with the dispenser body and adapted to slide within the second fluid chamber;
wherein the first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber when the adapter head is in the first position, and
wherein the first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber when the adapter head is in the second position.
14. The method of
extending the first piston at least partially into the first fluid chamber and the second piston at least partially into the second fluid chamber;
rotating the adaptor head back into the first position to unlock the side-by-side fluid cartridge from the dispenser body; and
removing the side-by-side fluid cartridge from the dispenser body.
16. The method of
connecting the second cartridge flange to the dispenser body with the plate in the second position.
17. The method of
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The present invention relates generally to fluid dispensing devices. More particularly, the invention relates to dispensing devices for dispensing fluid from side-by-side fluid cartridges and related methods of connecting side-by-side fluid cartridges to dispensing devices.
Side-by-side fluid cartridges (also known as dual-compartment cartridges or multi-component cartridges) are used for storing two viscous fluids separately within a single container unit and dispensing the fluids simultaneously so that they may be mixed and applied to a common substrate. Traditional side-by-side cartridges consist of a pair of cylindrically-shaped fluid chambers positioned adjacent and parallel to one another. Each chamber is configured to store a viscous fluid and includes an inlet at which the chamber is filled with the fluid, and an outlet from which the fluid is later dispensed. For example, the side-by-side cartridge may be used to store and dispense a two-part epoxy, where one chamber stores and dispenses the resin and the other chamber stores and dispenses the hardener. The fluid chambers may have equal internal volumes or different internal volumes as desired depending on the particular fluids being dispensed and their corresponding mixing ratios, for example a 1:1 mixing ratio or a 2:1 mixing ratio.
Fluid dispensing devices are used in conjunction with fluid cartridges, including side-by-side cartridges, for dispensing the stored fluid in precise amounts with repeatable accuracy. Traditional dispensing devices for side-by-side fluid cartridges include a dispenser body to which a side-by-side cartridge is attachable, and two pistons positioned side by side and each mounted on a plunger rod for extending the pistons from the dispenser body. In use, each piston is coaxially aligned with one of the fluid chambers of the fluid cartridge so that the pistons may extend into the fluid chambers to force the stored fluid out through the outlets of the cartridge. However, traditional fluid dispensing devices for use with side-by-side fluid cartridges present several drawbacks.
First, when attaching a side-by-side fluid cartridge to a traditional dispensing device, the cartridge must be moved from a first, assembly position into a second, dispensing position, for example by rotating or tilting the cartridge relative to the dispensing device. In the assembly position, the pistons are not aligned with the fluid chambers and thus are not extendable into the fluid chambers. Once the fluid cartridge is moved into the dispensing position, each piston is axially aligned with a corresponding fluid chamber of the cartridge and the dispensing device is ready for use. In this manner, the pistons are extendable and retractable within the fluid chambers of the side-by-side cartridge only when the cartridge has been moved from the assembly position into the dispensing position. Moreover, the side-by-side cartridge cannot be moved back to the assembly position for removal of the cartridge until the pistons have first been fully retracted from each of the fluid chambers. Attempting to move the cartridge from the dispensing position to the assembly position while the pistons are still extended into the fluid chambers would result in damaging the pistons and/or the plunger rods to which they are mounted. Accordingly, an operator must fully retract the pistons from the fluid chambers before removing the cartridge from the dispensing device. This step can become burdensome when using multiple consecutive cartridges in a dispensing application.
An additional drawback of traditional dispensing devices for side-by-side fluid cartridges relates to compatibility of the dispensing device with fluid cartridges having different flange thicknesses. Side-by-side fluid cartridges include a cartridge flange near the chamber inlets that engages the dispenser body when the cartridge and dispensing device are locked together in the dispensing position. Traditional dispensing devices include mating surfaces that are formed to accommodate only side-by-side cartridges having a cartridge flange of a particular thickness. Cartridge manufacturers often design their cartridges with a flange thickness that differs from that of cartridges produced by other manufacturers. Accordingly, an operator of a traditional dispensing device is generally restricted to use of cartridges produced by a particular manufacturer.
There is a need, therefore, for a fluid dispensing device for side-by-side fluid cartridges that addresses the present challenges such as those discussed above.
An exemplary embodiment of a dispensing device for dispensing fluid from a side-by-side fluid cartridge having a first fluid chamber and a second fluid chamber includes a dispenser body, a first piston, a second piston, and an adapter head. The first piston is coupled with the dispenser body and is adapted to slide within the first fluid chamber. Similarly, the second piston is coupled with the dispenser body and is adapted to slide within the second fluid chamber. The adapter head is configured to releasably connect the side-by-side fluid cartridge to the dispenser body. More specifically, the adapter head is movable between a first position in which the side-by-side fluid cartridge is releasable from the dispenser body and a second position in which the side-by-side fluid cartridge is in locking engagement with the dispenser body. The first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber when the adapter head is in the first position. Additionally, the first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber when the adapter head is in the second position.
Another embodiment includes a dispensing device for dispensing fluid from a side-by-side fluid cartridge having a first fluid chamber, a second fluid chamber, and a cartridge flange having a flange thickness in an axial direction of the side-by-side fluid cartridge. The fluid dispensing device includes a dispenser body to which the side-by-side fluid cartridge is releasably connectable with the cartridge flange. The fluid dispensing device further includes a plate coupled with the dispenser body and movable in the axial direction of the side-by-side fluid cartridge between a first position for receiving a first cartridge flange having a first flange thickness and a second position for receiving a second cartridge flange having a second flange thickness.
In use, a method of releasably connecting a side-by-side fluid cartridge to a fluid dispensing device is directed to a side-by-side fluid cartridge having a first fluid chamber and a second fluid chamber, and a fluid dispensing device having a dispenser body, a first piston coupled with the dispenser body and adapted to slide within the first fluid chamber, a second piston coupled with the dispenser body and adapted to slide within the second fluid chamber, and an adapter head coupled with the dispenser body. The method includes placing the adapter head in a first position in which the adapter head is configured to receive a portion of the side-by-side fluid cartridge. The method further includes positioning the side-by-side fluid cartridge adjacent to the dispenser body while the adapter head is in the first position such that the first piston is coaxially aligned with the first fluid chamber and the second piston is coaxially aligned with the second fluid chamber. Additionally, the method further includes moving the adapter head into a second position to lock the side-by-side fluid cartridge with the dispenser body while the first piston remains coaxially aligned with the first fluid chamber and the second piston remains coaxially aligned with the second fluid chamber.
In another embodiment, a method of releasably connecting a side-by-side fluid cartridge to a fluid dispensing device is directed to a fluid dispensing device having a dispenser body and a plate coupled with the dispenser body, the plate being movable in an axial direction of the side-by-side fluid cartridge, the side-by-side fluid cartridge including a cartridge flange having a flange thickness in the axial direction of the side-by-side fluid cartridge. The method includes placing the plate in a first position in which the dispenser body is configured to receive a first cartridge flange having a first flange thickness. The method further includes connecting the first cartridge flange to the dispenser body with the plate in the first position. Additionally, the method includes removing the first cartridge flange from the dispenser body. Furthermore, the method includes moving the plate toward a second position in which the dispenser body is configured to receive a second cartridge flange having a second flange thickness different than the first flange thickness.
Various additional features and advantages of the invention will become more apparent to those of ordinary skill in the art upon review of the following detailed description of the illustrative embodiments taken in conjunction with the accompanying drawings.
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and, together with a general description of the invention given above, and the detailed description of the embodiments given below, serve to explain the principles of the invention.
Referring to
As best shown in
The side-by-side fluid cartridge 100 includes a proximal end 106 configured to operatively engage the dispenser body 12 of the dispensing device 10. The proximal end 106 of the fluid cartridge 100 defines a pair of chamber inlets 107a and 107b through which the fluid chambers 102, 104 may be filled with fluid. A distal end 108 of the fluid cartridge 100 defines a pair of chamber outlets 109a and 109b through which stored fluid is dispensed from the fluid chambers 102, 104. Cartridge pistons 110a and 110b (also shown in
The adapter ring 120, as best shown in
A proximal surface 123 of the adapter ring 120 includes a primary recess 124 for receiving the cartridge flange 112 when the fluid cartridge 100 and the adapter ring 120 are coupled together. The adapter ring 120 may also include one or more secondary recesses for receiving corresponding alignment features provided on a fluid cartridge being used with the dispensing device 10. For example, as shown, the adapter ring 120 includes slots 126a and 126b for receiving the ribs 114a, 114b provided on the cartridge flange 112. The adapter ring 120 may be formed with secondary recesses of any shape and quantity for receiving corresponding additional alignment features provided on fluid cartridges produced by various cartridge manufacturers. Additionally, as shown, the adapter ring 120 includes a pair of opposed alignment tabs 128a and 128b extending from the proximal surface 123 of the adapter ring 120 in an axial direction. The alignment tabs 128a, 128b are received within corresponding alignment recesses 64a and 64b provided on a pressure plate 60 coupled with the dispenser body 12 for facilitating proper alignment of the side-by-side fluid cartridge 100 with the dispensing device 10, as described below.
The adapter ring 120 further includes a pair of opposed locking wings 130a and 130b extending radially outward for engaging the adapter head 20 of the dispensing device 10 and retaining the side-by-side fluid cartridge 100 in locking engagement with the dispenser body 12, as described below. Locking wings 130a includes a locking surface 132a and inclined ramps 134a and 134b formed at the ends of the locking surface 132. Similarly, locking wing 130b includes a locking surface 132b and inclined ramps 134c and 134d formed at the ends of the locking surface 132b, as best shown in
As shown in
The adapter head 20 is rotatable about the central axis A between a first, unlocked position (shown in
As is apparent from the figures and the description below with respect to the jaws 24a, 24b and the locking wings 130a, 130b, the fluid cartridge 100 is attachable to and separable from the dispenser body 12 only when the adapter head 20 is placed in a fully unlocked position, that is, when the indicator arrow 18 is aligned with the unlocked symbol 16. With reference to
Similarly, as is apparent from
As shown in
As shown best in
The dispensing device 10 further includes a first plunger 30 having a first plunger piston 32 and a second plunger 40 having a second plunger piston 42. As described in greater detail below with reference to
The dispensing device 10 further includes a retainer plate 50 and a pressure plate 60 coupled with the operating end 14 of the dispenser body 12 with shoulder screws 66a and 66b, as best shown in
Referring to
As shown in
Next, the adapter head 20 is rotated from the first, unlocked position into the second, locked position in which the fluid cartridge 100 is held in locking engagement with the dispenser body 12, as shown in
The dispenser body 12 includes a pneumatic air cylinder having an internal air chamber 70 and an air piston 72. The air piston 72 includes a crown 74 and a circumferential air seal 76, and is coupled with the first and second plunger rods 34, 44. The air piston 72 is slidable within the internal air chamber 70 along the central axis A for extending and retracting the plungers 30, 40 relative to the operating end 14 of the dispenser body 12. A threaded endcap 80 is provided at an end of the dispenser body 12 opposite the operating end 14 and includes an air inlet port 82 through which forced air may be passed. An air hose 84, best shown in
As shown in
As shown in
As described above, the first and second plunger pistons 32, 42 remain coaxially aligned with the respective first and second fluid chambers 102, 104 throughout operation of the fluid dispensing device 10, regardless of whether the adapter head 20 is in an unlocked position or a locked position. Accordingly, the fluid cartridge 100 may be disengaged and removed from the dispenser body 12 even when the plungers 30, 40 are extended from the dispenser body 12 such that the plunger pistons 32, 42 are positioned within the fluid chambers 102, 104. For example, with reference to
While the present invention has been illustrated by the description of specific embodiments thereof, and while the embodiments have been described in considerable detail, it is not intended to restrict or in any way limit the scope of the appended claims to such detail. The various features discussed herein may be used alone or in any combination. Additional advantages and modifications will readily appear to those skilled in the art. The invention in its broader aspects is therefore not limited to the specific details, representative apparatus and methods and illustrative examples shown and described. Accordingly, departures may be made from such details without departing from the scope or spirit of the general inventive concept.
Thompson, Jeff, Wong, Peter J.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Mar 04 2014 | Nordson Corporation | (assignment on the face of the patent) | / | |||
Mar 04 2014 | THOMPSON, JEFF | Nordson Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 032346 | /0605 | |
Mar 04 2014 | WONG, PETER J | Nordson Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 032346 | /0605 |
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